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AutomiG, a Biosensor to Detect Alterations in miRNA Biogenesis and in Small RNA Silencing Guided by Perfect Target Complementarity

Defects in miRNA biogenesis or activity are associated to development abnormalities and diseases. In Drosophila, miRNAs are predominantly loaded in Argonaute-1, which they guide for silencing of target RNAs. The miRNA pathway overlaps the RNAi pathway in this organism, as miRNAs may also associate w...

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Autores principales: Carré, Clément, Jacquier, Caroline, Bougé, Anne-Laure, de Chaumont, Fabrice, Besnard-Guerin, Corinne, Thomassin, Hélène, Pidoux, Josette, Da Silva, Bruno, Chalatsi, Eleftheria, Zahra, Sarah, Olivo-Marin, Jean-Christophe, Munier-Lehmann, Hélène, Antoniewski, Christophe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3760873/
https://www.ncbi.nlm.nih.gov/pubmed/24019960
http://dx.doi.org/10.1371/journal.pone.0074296
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author Carré, Clément
Jacquier, Caroline
Bougé, Anne-Laure
de Chaumont, Fabrice
Besnard-Guerin, Corinne
Thomassin, Hélène
Pidoux, Josette
Da Silva, Bruno
Chalatsi, Eleftheria
Zahra, Sarah
Olivo-Marin, Jean-Christophe
Munier-Lehmann, Hélène
Antoniewski, Christophe
author_facet Carré, Clément
Jacquier, Caroline
Bougé, Anne-Laure
de Chaumont, Fabrice
Besnard-Guerin, Corinne
Thomassin, Hélène
Pidoux, Josette
Da Silva, Bruno
Chalatsi, Eleftheria
Zahra, Sarah
Olivo-Marin, Jean-Christophe
Munier-Lehmann, Hélène
Antoniewski, Christophe
author_sort Carré, Clément
collection PubMed
description Defects in miRNA biogenesis or activity are associated to development abnormalities and diseases. In Drosophila, miRNAs are predominantly loaded in Argonaute-1, which they guide for silencing of target RNAs. The miRNA pathway overlaps the RNAi pathway in this organism, as miRNAs may also associate with Argonaute-2, the mediator of RNAi. We set up a gene construct in which a single inducible promoter directs the expression of the GFP protein as well as two miRNAs perfectly matching the GFP sequences. We show that self-silencing of the resulting automiG gene requires Drosha, Pasha, Dicer-1, Dicer-2 and Argonaute-2 loaded with the anti-GFP miRNAs. In contrast, self-silencing of the automiG gene does not involve Argonaute-1. Thus, automiG reports in vivo for both miRNA biogenesis and Ago-2 mediated silencing, providing a powerful biosensor to identify situations where miRNA or siRNA pathways are impaired. As a proof of concept, we used automiG as a biosensor to screen a chemical library and identified 29 molecules that strongly inhibit miRNA silencing, out of which 5 also inhibit RNAi triggered by long double-stranded RNA. Finally, the automiG sensor is also self-silenced by the anti-GFP miRNAs in HeLa cells and might be easily used to identify factors involved in miRNA biogenesis and silencing guided by perfect target complementarity in mammals.
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spelling pubmed-37608732013-09-09 AutomiG, a Biosensor to Detect Alterations in miRNA Biogenesis and in Small RNA Silencing Guided by Perfect Target Complementarity Carré, Clément Jacquier, Caroline Bougé, Anne-Laure de Chaumont, Fabrice Besnard-Guerin, Corinne Thomassin, Hélène Pidoux, Josette Da Silva, Bruno Chalatsi, Eleftheria Zahra, Sarah Olivo-Marin, Jean-Christophe Munier-Lehmann, Hélène Antoniewski, Christophe PLoS One Research Article Defects in miRNA biogenesis or activity are associated to development abnormalities and diseases. In Drosophila, miRNAs are predominantly loaded in Argonaute-1, which they guide for silencing of target RNAs. The miRNA pathway overlaps the RNAi pathway in this organism, as miRNAs may also associate with Argonaute-2, the mediator of RNAi. We set up a gene construct in which a single inducible promoter directs the expression of the GFP protein as well as two miRNAs perfectly matching the GFP sequences. We show that self-silencing of the resulting automiG gene requires Drosha, Pasha, Dicer-1, Dicer-2 and Argonaute-2 loaded with the anti-GFP miRNAs. In contrast, self-silencing of the automiG gene does not involve Argonaute-1. Thus, automiG reports in vivo for both miRNA biogenesis and Ago-2 mediated silencing, providing a powerful biosensor to identify situations where miRNA or siRNA pathways are impaired. As a proof of concept, we used automiG as a biosensor to screen a chemical library and identified 29 molecules that strongly inhibit miRNA silencing, out of which 5 also inhibit RNAi triggered by long double-stranded RNA. Finally, the automiG sensor is also self-silenced by the anti-GFP miRNAs in HeLa cells and might be easily used to identify factors involved in miRNA biogenesis and silencing guided by perfect target complementarity in mammals. Public Library of Science 2013-09-03 /pmc/articles/PMC3760873/ /pubmed/24019960 http://dx.doi.org/10.1371/journal.pone.0074296 Text en © 2013 Carré et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Carré, Clément
Jacquier, Caroline
Bougé, Anne-Laure
de Chaumont, Fabrice
Besnard-Guerin, Corinne
Thomassin, Hélène
Pidoux, Josette
Da Silva, Bruno
Chalatsi, Eleftheria
Zahra, Sarah
Olivo-Marin, Jean-Christophe
Munier-Lehmann, Hélène
Antoniewski, Christophe
AutomiG, a Biosensor to Detect Alterations in miRNA Biogenesis and in Small RNA Silencing Guided by Perfect Target Complementarity
title AutomiG, a Biosensor to Detect Alterations in miRNA Biogenesis and in Small RNA Silencing Guided by Perfect Target Complementarity
title_full AutomiG, a Biosensor to Detect Alterations in miRNA Biogenesis and in Small RNA Silencing Guided by Perfect Target Complementarity
title_fullStr AutomiG, a Biosensor to Detect Alterations in miRNA Biogenesis and in Small RNA Silencing Guided by Perfect Target Complementarity
title_full_unstemmed AutomiG, a Biosensor to Detect Alterations in miRNA Biogenesis and in Small RNA Silencing Guided by Perfect Target Complementarity
title_short AutomiG, a Biosensor to Detect Alterations in miRNA Biogenesis and in Small RNA Silencing Guided by Perfect Target Complementarity
title_sort automig, a biosensor to detect alterations in mirna biogenesis and in small rna silencing guided by perfect target complementarity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3760873/
https://www.ncbi.nlm.nih.gov/pubmed/24019960
http://dx.doi.org/10.1371/journal.pone.0074296
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